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Comparing Systems: Max-Case Refinement Orders and Application to Differential Privacy

机译:比较系统:最大用例优化顺序及其对差异性隐私的应用

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Quantitative Information Flow (QIF) and Differential Privacy (DP) are both concerned with the protection of sensitive information, but they are rather different approaches. In particular, QIF considers the expected probability of a successful attack, while DP (in both its standard and local versions) is a max-case measure, in the sense that it is compromised by the existence of a possible attack, regardless of its probability. Comparing systems is a fundamental task in these areas: one wishes to guarantee that replacing a system A by a system B is a safe operation, that is the privacy of B is no-worse than that of A. In QIF, a refinement order provides strong such guarantees, while in DP mechanisms are typically compared (w.r.t. privacy) based on the ε privacy parameter that they provide. In this paper we explore a variety of refinement orders, inspired by the one of QIF, providing precise guarantees for max-case leakage. We study simple structural ways of characterising them, the relation between them, efficient methods for verifying them and their lattice properties. Moreover, we apply these orders in the task of comparing DP mechanisms, raising the question of whether the order based on ε provides strong privacy guarantees. We show that, while it is often the case for mechanisms of the same "family" (geometric, randomised response, etc.), it rarely holds across different families.
机译:定量信息流(QIF)和差异隐私(DP)都与敏感信息的保护有关,但是它们是完全不同的方法。尤其是,QIF会考虑成功攻击的预期可能性,而DP(在其标准版本和本地版本中)都是最大情况下的度量,从某种意义上说,无论是否存在可能性,DP都会受到可能的攻击的损害。在这些领域中,比较系统是一项基本任务:希望保证以系统B替换系统A是安全的操作,也就是说,系统B的隐私要比系统A的隐私差。在DP机制中,通常会根据它们提供的ε隐私参数对这些机制进行比较(wrt隐私)。在本文中,我们从QIF的启发中探索了多种优化顺序,为最大工况泄漏提供了精确的保证。我们研究了表征它们的简单结构方法,它们之间的关系,验证它们的有效方法及其晶格性质。此外,我们将这些命令应用于比较DP机制的任务,从而提出了一个问题,即基于ε的命令是否可以提供强大的隐私保证。我们证明,虽然对于同一“家庭”的机制(几何,随机响应等)通常是这种情况,但在不同家庭中却很少见。

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